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Medical Specialties

University of Kentucky

2007

Anti-Bacterial Agents

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Azithromycin In The Extremely Low Birth Weight Infant For The Prevention Of Bronchopulmonary Dysplasia: A Pilot Study, Hubert O. Ballard, Michael I. Anstead, Lori A. Shook Jun 2007

Azithromycin In The Extremely Low Birth Weight Infant For The Prevention Of Bronchopulmonary Dysplasia: A Pilot Study, Hubert O. Ballard, Michael I. Anstead, Lori A. Shook

Pediatrics Faculty Publications

BACKGROUND: Azithromycin reduces the severity of illness in patients with inflammatory lung disease such as cystic fibrosis and diffuse panbronchiolitis. Bronchopulmonary dysplasia (BPD) is a pulmonary disorder which causes significant morbidity and mortality in premature infants. BPD is pathologically characterized by inflammation, fibrosis and impaired alveolar development. The purpose of this study was to obtain pilot data on the effectiveness and safety of prophylactic azithromycin in reducing the incidence and severity of BPD in an extremely low birth weight (< or = 1000 grams) population.

METHODS: Infants < or = 1000 g birth weight admitted to the University of Kentucky Neonatal Intensive Care Unit (level III, regional referral center) from 9/1/02-6/30/03 were eligible for this pilot study. The pilot study was double-blinded, randomized, and placebo-controlled. Infants were randomized to treatment or placebo within 12 hours of beginning mechanical ventilation (IMV) and within 72 hours of birth. The treatment group received azithromycin 10 mg/kg/day for 7 days followed by 5 mg/kg/day for the duration of the study. Azithromycin or placebo was continued until the infant no longer required IMV or supplemental oxygen, to a maximum of 6 weeks. Primary endpoints were incidence of BPD as defined by oxygen requirement at 36 weeks gestation, post-natal steroid use, days of IMV, and mortality. Data was analyzed by intention to treat using Chi-square and ANOVA.

RESULTS: A total of 43 extremely premature infants were enrolled in this pilot study. Mean gestational age and …